Title of article :
Hydrogen production in solar reactors
Author/Authors :
Christos C. Agrafiotis، نويسنده , , Chrysoula Pagkoura، نويسنده , , Souzana Lorentzou، نويسنده , , Margaritis Kostoglou، نويسنده , , Athanasios G. Konstandopoulos، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
13
From page :
265
To page :
277
Abstract :
The present work summarizes the recent activities of our laboratory in the field of solar-aided hydrogen production with structured monolithic solar reactors. This reactor concept, “transferred” from the well-known automobile exhaust catalytic after-treatment systems, employs ceramic supports optimized to absorb effectively solar radiation and develop sufficiently high temperatures, that are coated with active materials capable to perform/catalyze a variety of “solar-aided” reactions for the production of hydrogen such as water splitting or natural gas reforming. Our work evolves in an integrated approach starting from the synthesis of active powders tailored to particular hydrogen production reactions, their deposition upon porous absorbers, testing of relevant properties of merit such as thermomechanical stability and hydrogen yield and finally to the design, operation simulation and performance optimization of structured monolithic solar hydrogen production reactors. This approach, among other things, has culminated to the worldʹs first closed, solar-thermochemical cycle in operation that is capable of continuous hydrogen production employing entirely renewable and abundant energy sources and raw materials – solar energy and water, respectively – without any CO2 emissions and holds, thus, a significant potential for large-scale, emissions-free hydrogen production, particularly for regions of the world that lack indigenous resources but are endowed with ample solar energy.
Keywords :
Solar hydrogen , Water splitting , Steam reforming , Redox materials , Monolithic reactors , Catalytic materials
Journal title :
CATALYSIS TODAY
Serial Year :
2007
Journal title :
CATALYSIS TODAY
Record number :
1236105
Link To Document :
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